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The antitumor effect of a new docetaxel-loaded microbubble combined with low-frequency ultrasound in vitro: Preparation and parameter analysis

机译:新型多西他赛微泡联合低频超声的体外抗肿瘤作用:制备及参数分析

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Purpose: To develop a novel docetaxel (DOC)-loaded lipid microbubbles (MBs) for achieving target therapy and overcoming the poor water-solubility drawback of DOC. Methods: A novel DOC-loaded microbubble (DOC + MB) was prepared by lyophilization and the physicochemical properties including ultrasound contrast imaging of the liver were measured. The anti-tumor effect of the DOC + MBs combined with low-frequency ultrasound (LFUS; 0.8Hz, 2.56 W/cm2, 50% cycle duty) on the DLD-1 cancer cell line was examined using an MTT assay. Results: The physicochemical properties of the two tested formats of DOC + MBs (1.0 mg and 1.6 mg) was shown: concentration, (6.74 ± 0.02) × 108 bubbles/mL and (8.27 ± 0.15) × 108 bubbles/mL; mean size, 3.296 ± 0.004 μm and 3.387 ± 0.005 μm; pH value, 6.67 ± 0.11 and 6.56 ± 0.05; release rate, 3.41% and 12.50%; Zeta potential, -37.95 ± 7.84 mV and -44.35 ± 8.70 mV; and encapsulation efficiency, 54.9 ± 6.21% and 46.3 ± 5.69%, respectively. Compared with SonoVue, the DOC + MBs similarly enhanced the echo signal of the liver imaging. The anti-tumor effect of the DOC + MBs/LFUS group was significantly better than that of DOC alone and that of the normal MBs/LFUS groups. Conclusions: The self-made DOC + MBs have potential as a new ultrasound contrast agent and drug-loaded microbubble, and can obviously enhance the antitumor effect of DOC under LFUS exposure.
机译:目的:开发一种新型多西紫杉醇(DOC)负载的脂质微泡(MBs),以实现靶向治疗并克服DOC的水溶性差的缺点。方法:冻干法制备新型的DOC负载微泡(DOC + MB),并测量其理化性质,包括肝脏超声造影。使用MTT分析法检查了DOC + MBs结合低频超声(LFUS; 0.8Hz,2.56 W / cm2、50%循环负荷)的抗肿瘤作用。结果:显示了两种测试形式的DOC + MBs(1.0 mg和1.6 mg)的理化性质:浓度(6.74±0.02)×108气泡/ mL和(8.27±0.15)×108气泡/ mL;平均尺寸为3.296±0.004μm和3.387±0.005μm; pH值为6.67±0.11和6.56±0.05;释放率分别为3.41%和12.50%; Zeta电位-37.95±7.84 mV和-44.35±8.70 mV;封装效率分别为54.9±6.21%和46.3±5.69%。与SonoVue相比,DOC + MBs同样增强了肝脏成像的回声信号。 DOC + MBs / LFUS组的抗肿瘤作用明显优于单独的DOC和正常MBs / LFUS组的抗肿瘤作用。结论:自制的DOC + MB具有作为新型超声造影剂和载药微泡的潜力,在LFUS暴露下可以明显增强DOC的抗肿瘤作用。

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